市场调查报告书
商品编码
1466619
建筑隔热材料市场:按材料、应用和建筑类型划分 - 2024-2030 年全球预测Building Thermal Insulation Market by Material (Aerogels, Cellulose, Glass Wool), Application (Floor Insulation, Roof Insulation, Wall Insulation), Building Type - Global Forecast 2024-2030 |
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预计2023年建筑隔热材料市场规模为250.2亿美元,预计2024年将达261亿美元,2030年将达到338.6亿美元,复合年增长率为4.41%。
建筑隔热材料是指在结构内应用材料来防止建筑物与其环境之间的热量传递。此过程有助于保持最佳室内温度、减少能源消耗并提高居住者的整体舒适度。用于隔热材料的材料各不相同,但通常包括纤维素、玻璃纤维、矿棉和各种型态的发泡体。采用建筑隔热材料的主要驱动力是能源成本的显着降低。保持稳定的室内温度可以减少对暖气和冷气系统的需求,从而显着节省能源费用。世界各国政府正在推出更严格的法规和建筑规范,并专注于能源效率和永续性。这些法规通常规定特定的绝缘标准并鼓励采用绝缘解决方案。然而,用新的隔热材料维修建筑物可能会很复杂且具有破坏性,特别是在最初设计时并非为了适应此类维修的旧建筑中。安装不当或漏气等技术和性能问题可能会导致水分积聚、促进霉菌生长并损害结构完整性。对气凝胶和相变材料 (PCM) 等新材料的持续研究为更高效、更环保的隔热解决方案提供了潜力。动态控制建筑立面并即时适应环境条件的智慧技术的集成为未来带来了巨大的机会。
主要市场统计 | |
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基准年[2023] | 250.2亿美元 |
预测年份 [2024] | 261亿美元 |
预测年份 [2030] | 338.6亿美元 |
复合年增长率(%) | 4.41% |
由于其成本效益、多功能性和高隔热性能,玻璃绒越来越多地应用于各种行业。
气凝胶因其优异的耐热性和轻质而受到认可。气凝胶由液体成分被气体取代的凝胶组成,密度低、孔隙率低,具有较高的隔热效果。纤维素是一种永续且环保的材料,由报纸等再生纸製成,并经过阻燃剂处理。通常以鬆散填充或喷雾形式使用,可有效填充间隙和空隙,减少对流传热。其广泛使用是由于其可用性、成本效益和相对简单的安装过程,但需要适当的处理以避免随着时间的推移压实和绝缘性能的损失。玻璃绒是由玻璃纤维材料製成的,也是一种广泛普及的隔热材料。透过将熔融玻璃纺成细纤维,它可以形成一种可以捕获空气并减少热流的基质。玻璃绒因其多功能性、防火性和吸音特性而受到重视,使其适用于各种住宅和商业应用。有毯状、蝙蝠状和鬆散填充形状可供选择,结构弹性。塑胶泡沫包括多种合成材料,例如聚苯乙烯、聚氨酯和聚异氰酸酯。这些材料具有高耐热性,并以有效阻挡热流而闻名。它有硬质板材、喷涂泡沫和板材可供选择,可用于多种应用,包括墙壁、屋顶和地板。岩棉,也称为矿棉,由火山岩和其他矿物质熔化并纺成纤维製成。这种材料因其耐火性、绝缘性和隔音性而受到高度讚扬。岩棉本质上不易燃,可以承受高温,适合在火灾敏感区域使用。它还不易吸水,具有优异的耐用性和绝缘性能。
应用范围:寒冷地区或温差较大地区建筑屋顶隔热的必要性
地板保温是指在地板表面下方安装隔热材料,以防止建筑物内部的热量散失到地面。这种形式的隔热对于地面和生活空间之间温差较大的建筑物尤其重要。有效的地板隔热可以保持建筑物内的温度均匀,提高舒适度并减少对暖气的需求。用于地板隔热的常见材料包括玻璃纤维、聚苯乙烯和聚氨酯泡棉。屋顶隔热旨在最大限度地减少屋顶的热传递,屋顶是大量热传递的关键位置。屋顶隔热可以防止夏季热量进入建筑物,冬季防止热量逸出,并保持室内气候平衡。隔热材料的选择和安装方法根据屋顶的类型而有所不同,可能包括反射隔热材料、喷涂泡棉和棉絮隔热材料。足够的屋顶隔热有助于节省能源,对于位于极端天气条件地区的建筑至关重要。墙壁是建筑物内部与外部环境之间的另一个主要介面。墙壁隔热涉及在墙体空腔内插入隔热材料或应用外部或内部隔热系统以减少热桥和传热。用于隔热墙壁的常见材料包括矿棉、玻璃纤维和硬质发泡板。良好的墙体隔热可以显着降低暖气和冷气的能耗,对于实现建筑物高水准的热舒适度至关重要。
区域洞察
在美洲,特别是在美国和加拿大,严格的建筑规范以及住宅和商业领域对能源效率的需求正在推动对建筑隔热材料的需求。美国能源之星计画和加拿大建筑能源规范 (NECB) 制定了促进隔热材料使用的指南。这些国家的消费者越来越意识到隔热材料的成本节约和环境效益,从而影响购买更永续和更高 R 值材料的决策。旨在提高建筑效率的研发投资和多项政府措施很常见,重点是提供更好绝缘性能和减少环境影响的材料。亚太地区正在经历快速的都市化和建筑业的成长,导致对建筑隔热材料材料的需求迅速增加。在中国,政府对绿建筑标准和节能政策的重视正在对市场产生重大影响。日本以其技术进步而闻名,越来越多地采用创新的隔热材料和技术。在印度,基础设施发展的进步和节能意识的增强正在推动市场的发展。在欧盟 (EU),建筑能源绩效指令 (EPBD) 是隔热材料市场的关键驱动因素,成员国的目标是到 2020 年使新建筑接近零能耗建筑 (NZEB)。这增加了对高性能隔热材料的需求。欧洲消费者倾向于优先考虑具有环境效益的产品,青睐天然和可回收材料。欧盟的 Horizon 2020 计画在资助永续建筑材料(包括隔热材料)的研究和创新方面发挥着重要作用。
FPNV定位矩阵
FPNV定位矩阵对于评估建筑隔热材料市场至关重要。我们检视与业务策略和产品满意度相关的关键指标,以对供应商进行全面评估。这种深入的分析使用户能够根据自己的要求做出明智的决策。根据评估,供应商被分为四个成功程度不同的像限:前沿(F)、探路者(P)、利基(N)和重要(V)。
市场占有率分析
市场占有率分析是一种综合工具,可以对建筑隔热材料市场供应商的现状进行深入而深入的研究。全面比较和分析供应商在整体收益、基本客群和其他关键指标方面的贡献,以便更好地了解公司的绩效及其在争夺市场占有率时面临的挑战。此外,该分析还提供了对该行业竞争特征的宝贵见解,包括在研究基准年观察到的累积、分散主导地位和合併特征等因素。详细程度的提高使供应商能够做出更明智的决策并制定有效的策略,从而在市场上获得竞争优势。
1. 市场渗透率:提供有关主要企业所服务的市场的全面资讯。
2. 市场开拓:我们深入研究利润丰厚的新兴市场,并分析其在成熟细分市场的渗透率。
3. 市场多元化:提供有关新产品发布、开拓地区、最新发展和投资的详细资讯。
4.竞争评估与资讯:对主要企业的市场占有率、策略、产品、认证、监管状况、专利状况、製造能力等进行全面评估。
5. 产品开发与创新:提供对未来技术、研发活动和突破性产品开发的见解。
1.建筑隔热材料市场的市场规模与预测是多少?
2.在建筑隔热材料市场的预测期间内,有哪些产品、细分市场、应用和领域需要考虑投资?
3.建筑隔热材料市场的技术趋势与法规结构是什么?
4.建筑隔热材料市场主要供应商的市场占有率为何?
5.进入建筑隔热材料市场的合适型态和策略手段是什么?
[180 Pages Report] The Building Thermal Insulation Market size was estimated at USD 25.02 billion in 2023 and expected to reach USD 26.10 billion in 2024, at a CAGR 4.41% to reach USD 33.86 billion by 2030.
Building thermal insulation refers to the application of materials within structures to prevent heat transfer between the building and its environment. This process is instrumental in maintaining an optimal indoor temperature, reducing energy consumption, and enhancing the overall comfort of occupants. The materials used for insulation vary but generally include cellulose, fiberglass, mineral wool, and various forms of foam. A primary driver for the adoption of building thermal insulation is the significant reduction in energy costs it can offer. By maintaining stable indoor temperatures, the need for heating and cooling systems is reduced, leading to substantial savings on energy bills. Governments worldwide are implementing stricter regulations and building codes focused on energy conservation and sustainability. These regulations often mandate specific insulation standards, driving the adoption of thermal insulation solutions. However, retrofitting buildings with new insulation can be complex and disruptive, particularly in older structures not originally designed to accommodate such upgrades. Technical and performance issues such as improper installation and air leakage can lead to moisture accumulation, fostering mold growth and potentially compromising structural integrity. Ongoing research into new materials, such as aerogels and phase change materials (PCMs), offers the potential for more efficient and greener insulation solutions. The integration of smart technologies for dynamic control of building envelopes, adapting in real-time to environmental conditions, presents a significant opportunity for the future.
KEY MARKET STATISTICS | |
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Base Year [2023] | USD 25.02 billion |
Estimated Year [2024] | USD 26.10 billion |
Forecast Year [2030] | USD 33.86 billion |
CAGR (%) | 4.41% |
Material: Emerging utilization of glass wool in diverse industries due to its cost-effectiveness, versatile applications, and good insulation properties
Aerogels are recognized for their superior thermal resistance and lightweight properties. Composed of a gel in which the liquid component is replaced with gas, aerogels show low density and porosity, which makes them highly effective insulators. Cellulose is a sustainable and eco-friendly option derived from recycled paper products such as newspapers, which are treated with fire retardants. It is often applied in loose-fill or sprayed forms, effectively filling gaps and voids, thereby reducing heat transfer through convection. Its wide application is attributable to its accessibility, cost-effectiveness, and relatively simple installation process, though it requires proper handling to avoid compaction and diminished insulation performance over time. Glass wool, made from fibrous glass materials, is another prevalent insulation material. The process involves spinning molten glass into fine fibers, which creates a matrix capable of trapping air and thus reducing heat flow. Glass wool is appreciated for its versatility, fire resistance, and sound absorption qualities, making it suitable for a variety of residential and commercial applications. It is available in blankets, batts, and loose-fill forms, offering flexibility in installation. Plastic foam encompasses a variety of synthetic materials, including polystyrene, polyurethane, and polyisocyanurate. They are known for their robust thermal resistance and provide an effective barrier against heat flow. They come in rigid sheets, spray foams, or panels, enabling application in extensive areas such as walls, roofs, and floors. Stone wool, alternatively known as mineral wool, is fabricated from volcanic rock and other minerals, which are melted and spun into fibers. This material is lauded for its fire resistance, thermal insulation properties, and acoustic benefits. Stone wool is inherently non-combustible and capable of withstanding high temperatures, making it a preferred choice in fire-sensitive areas. It is also resistant to water absorption, adding to its durability and insulation performance.
Application: Need for roof insulation in buildings situated in colder climates or areas with significant temperature variance
Floor insulation pertains to the application of insulating materials beneath the flooring surface to prevent heat loss from the building's interior to the ground. This form of insulation is especially crucial in buildings where there is a significant temperature differential between the ground and the occupied spaces. Effective floor insulation can help maintain a uniform temperature within the premises, thereby enhancing comfort and reducing the need for additional heating. Materials commonly used for floor insulation include fiberglass, polystyrene, and polyurethane foam. Roof insulation is directed towards minimizing heat transfer through the roof, a critical area where significant heat gain and loss can occur. In summer, roof insulation helps in reducing the heat entering the building, while in winter, it prevents the escape of heat from within, maintaining a balanced interior climate. The choice of insulation materials and the method of application can vary based on roof type, with options including reflective insulation, spray foam, and batt insulation. Adequate roof insulation contributes substantially to energy savings and is vital for buildings located in regions with extreme weather conditions. Walls are another primary interface between the interior of a building and the outside environment. Wall insulation involves the insertion of insulating materials within wall cavities or the application of external or internal insulation systems to reduce thermal bridging and heat transfer. Materials commonly used for wall insulation encompass mineral wool, fiberglass, and rigid foam panels. Good wall insulation can significantly cut down on energy consumption for heating and cooling and is essential for achieving a high level of thermal comfort inside the building.
Regional Insights
In the Americas region, particularly in the United States and Canada, the demand for building thermal insulation is driven by stringent building codes and the need for energy efficiency in both residential and commercial sectors. The Energy Star program in the U.S. and Canada's National Energy Code for Buildings (NECB) set forth guidelines that promote the use of thermal insulation materials. Consumers in these countries are becoming aware of the cost savings and environmental benefits of insulation, influencing their purchasing decisions towards more sustainable and higher R-value materials. Investment in R&D and several government initiatives aimed at improving building efficiency are common, focusing on materials that offer better insulation properties and reduced environmental impact. The Asia Pacific region is experiencing rapid urbanization and growth in the construction sector, leading to a surge in the need for building thermal insulation materials. In China, the government's emphasis on green building standards and energy-saving policies has significantly impacted the market. Japan, known for its technological advancements, has seen a rise in the adoption of innovative insulation materials and techniques. India's landscape is driven by increased infrastructure development and a growing awareness of energy conservation. In the European Union, the Directive on the Energy Performance of Buildings (EPBD) is a key driver for the insulation market, requiring member states to ensure that new buildings are nearly zero-energy buildings (NZEB) by 2020. This has led to a heightened demand for high-performance insulation materials. European consumers tend to prioritize products that offer environmental benefits, leading to a preference for natural and recycled materials. The EU's Horizon 2020 program has been instrumental in funding research and innovation in sustainable building materials, including thermal insulation.
FPNV Positioning Matrix
The FPNV Positioning Matrix is pivotal in evaluating the Building Thermal Insulation Market. It offers a comprehensive assessment of vendors, examining key metrics related to Business Strategy and Product Satisfaction. This in-depth analysis empowers users to make well-informed decisions aligned with their requirements. Based on the evaluation, the vendors are then categorized into four distinct quadrants representing varying levels of success: Forefront (F), Pathfinder (P), Niche (N), or Vital (V).
Market Share Analysis
The Market Share Analysis is a comprehensive tool that provides an insightful and in-depth examination of the current state of vendors in the Building Thermal Insulation Market. By meticulously comparing and analyzing vendor contributions in terms of overall revenue, customer base, and other key metrics, we can offer companies a greater understanding of their performance and the challenges they face when competing for market share. Additionally, this analysis provides valuable insights into the competitive nature of the sector, including factors such as accumulation, fragmentation dominance, and amalgamation traits observed over the base year period studied. With this expanded level of detail, vendors can make more informed decisions and devise effective strategies to gain a competitive edge in the market.
Key Company Profiles
The report delves into recent significant developments in the Building Thermal Insulation Market, highlighting leading vendors and their innovative profiles. These include 3M Company, Altana AG, Aspen Aerogels, Inc., BASF SE, Cellofoam North America, Inc., CNBM Group Co., Ltd., Compagnie de Saint-Gobain S.A., Concept Group LLC, DuPont de Nemours, Inc., Evonik AG, GAF Materials Corporation, Johns Manville Corporation, Kingspan Group PLC, Knauf Digital GmbH, Lloyd Insulations (India) Limited, LyondellBasell Industries N.V., Neo Thermal Insulation (India) Pvt. Ltd., Nichias Corporation, Owens Corning, Recticel SA, Rockwool International A/S, Sika Group AG, Solvay SA, Sumitomo Corporation, The Dow Chemical Company, and Ursa Insulation SA.
Market Segmentation & Coverage
1. Market Penetration: It presents comprehensive information on the market provided by key players.
2. Market Development: It delves deep into lucrative emerging markets and analyzes the penetration across mature market segments.
3. Market Diversification: It provides detailed information on new product launches, untapped geographic regions, recent developments, and investments.
4. Competitive Assessment & Intelligence: It conducts an exhaustive assessment of market shares, strategies, products, certifications, regulatory approvals, patent landscape, and manufacturing capabilities of the leading players.
5. Product Development & Innovation: It offers intelligent insights on future technologies, R&D activities, and breakthrough product developments.
1. What is the market size and forecast of the Building Thermal Insulation Market?
2. Which products, segments, applications, and areas should one consider investing in over the forecast period in the Building Thermal Insulation Market?
3. What are the technology trends and regulatory frameworks in the Building Thermal Insulation Market?
4. What is the market share of the leading vendors in the Building Thermal Insulation Market?
5. Which modes and strategic moves are suitable for entering the Building Thermal Insulation Market?